Wells Rebecca G
Department of Medicine (Gastroenterology), The University of Pennsylvania School of Medicine, Philadelphia, PA, USA.
Hepatology. 2008 Apr;47(4):1394-400. doi: 10.1002/hep.22193.
Matrix stiffness (resistance to deformation), one of the many mechanical forces acting on cells, is increasingly appreciated as an important mediator of cell behavior. It regulates cell signaling broadly, with effects on growth, survival, and motility. Although the stiffness optima for different kinds of adherent cells vary widely, it is generally true that cell proliferation and differentiation increase with the stiffness of the matrix. This review summarizes recent data exploring the nature of matrix stiffness, mechanotransducers, and the many effects of changes in stiffness on cell function. Particular mention is made of data suggesting that cells of the liver are mechanosensitive, highlighting the potential importance of these findings in understanding the biology of normal and diseased liver.
基质硬度(抗变形能力)是作用于细胞的众多机械力之一,越来越被视为细胞行为的重要调节因子。它广泛调节细胞信号传导,对细胞生长、存活和运动产生影响。尽管不同类型贴壁细胞的最佳硬度差异很大,但一般来说,细胞增殖和分化会随着基质硬度的增加而增加。本综述总结了最近探索基质硬度本质、机械转导器以及硬度变化对细胞功能的多种影响的数据。特别提到了表明肝脏细胞具有机械敏感性的数据,突出了这些发现对于理解正常和患病肝脏生物学的潜在重要性。